Department of Pharmacy , National University of Singapore , 18 Science Drive 4 , 117543 , Singapore.
Department of Medicine , National University of Singapore , 14 Medical Drive , 117599 , Singapore.
J Med Chem. 2018 Jul 12;61(13):5733-5750. doi: 10.1021/acs.jmedchem.8b00777. Epub 2018 Jun 25.
The inclusion of an azaspiroketal Mannich base in the membrane targeting antitubercular 6-methoxy-1- n-octyl-1 H-indole scaffold resulted in analogs with improved selectivity and submicromolar activity against Mycobacterium tuberculosis H37Rv. The potency enhancing properties of the spiro-fused ring motif was affirmed by SAR and validated in a mouse model of tuberculosis. As expected for membrane inserting agents, the indolyl azaspiroketal Mannich bases perturbed phospholipid vesicles, permeabilized bacterial cells, and induced the mycobacterial cell envelope stress reporter promoter p iniBAC. Surprisingly, their membrane disruptive effects did not appear to be associated with bacterial membrane depolarization. This profile was not uniquely associated with azaspiroketal Mannich bases but was characteristic of indolyl Mannich bases as a class. Whereas resistant mycobacteria could not be isolated for a less potent indolyl Mannich base, the more potent azaspiroketal analog displayed low spontaneous resistance mutation frequency of 10/CFU. This may indicate involvement of an additional envelope-related target in its mechanism of action.
将氮杂螺缩酮曼尼希碱纳入到具有膜靶向性的抗结核 6-甲氧基-1-正辛基-1H-吲哚骨架中,得到的类似物对结核分枝杆菌 H37Rv 的选择性提高,活性达到亚微摩尔级。螺环融合环模体的增效特性通过 SAR 得到了证实,并在结核分枝杆菌的小鼠模型中得到了验证。正如插入膜的试剂所预期的那样,吲哚氮杂螺缩酮曼尼希碱扰动了磷脂囊泡,使细菌细胞通透性增加,并诱导分枝杆菌细胞包膜应激报告启动子 p iniBAC。令人惊讶的是,它们的膜破坏作用似乎与细菌膜去极化无关。这种特性并不是氮杂螺缩酮曼尼希碱所特有的,而是吲哚曼尼希碱类的特征。虽然对于活性较低的吲哚曼尼希碱来说,无法分离出耐药的分枝杆菌,但活性更高的氮杂螺缩酮类似物的自发耐药突变频率为 10/CFU,较低。这可能表明其作用机制涉及到另一个与包膜相关的靶点。